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Research Article

Quantum Communication Technology for Optimizing 3D Cost Estimation and Secure Data Transmission in Substation Engineering

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  • @ARTICLE{10.4108/eetsis.12021,
        author={Junchao Li and Fei You and Dan Chen},
        title={Quantum Communication Technology for Optimizing 3D Cost Estimation and Secure Data Transmission in Substation Engineering},
        journal={EAI Endorsed Transactions on Scalable Information Systems},
        volume={12},
        number={8},
        publisher={EAI},
        journal_a={SIS},
        year={2026},
        month={3},
        keywords={Quantum communication, Secure data transmission, Substation engineering, 3D cost estimation, Distributed systems},
        doi={10.4108/eetsis.12021}
    }
    
  • Junchao Li
    Fei You
    Dan Chen
    Year: 2026
    Quantum Communication Technology for Optimizing 3D Cost Estimation and Secure Data Transmission in Substation Engineering
    SIS
    EAI
    DOI: 10.4108/eetsis.12021
Junchao Li1,*, Fei You1, Dan Chen1
  • 1: Economic and Technical Research Institute, State Grid Ningxia Electric Power Co., Ltd.
*Contact email: wfswxhll@163.com

Abstract

INTRODUCTION: The highly sensitive 3D cost estimation data in substation projects faces significant security challenges during distributed transmission, as conventional encryption approaches prove inadequate against quantum computing threats for large-scale engineering data protection. OBJECTIVES: This study aims to develop a quantum communication-based secure transmission framework for substation 3D cost estimation data, employing a three-tier quantum architecture to achieve information-theoretic security levels with robust defense against network attacks. METHODS: The proposed solution employs a three-tier quantum architecture encompassing physical, network, and application layers, with optimized quantum channels for engineering data flow. The framework utilizes the BB84 protocol with the decoy state method, implementing quantum key distribution and classical encryption integration to maintain data integrity through a distributed optimization strategy. RESULTS: Simulation validation across 10-50 node networks demonstrates quantum key generation rates of 8-40 kbps and 23% improvement in network throughput compared to star topology over traditional methods. The system achieves 99.99% reduction in key usage compared to pure quantum approaches while maintaining information-theoretic security levels. CONCLUSION: This research establishes fundamental principles and implementation pathways for quantum communication applications in engineering domains, offering significant advancement in secure data transmission for sensitive industrial applications and providing a reliable solution for protecting critical infrastructure engineering data.

Keywords
Quantum communication, Secure data transmission, Substation engineering, 3D cost estimation, Distributed systems
Received
2025-09-15
Accepted
2025-10-17
Published
2026-03-16
Publisher
EAI
http://dx.doi.org/10.4108/eetsis.12021

Copyright © 2026 Junchao Li et al., licensed to EAI. This is an open access article distributed under the terms of the CC BY-NC-SA 4.0, which permits copying, redistributing, remixing, transformation, and building upon the material in any medium so long as the original work is properly cited.

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